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Benchmark tests for verifying discrete element modelling codes at particle impact level

机译:基准测试,用于在粒子碰撞级别验证离散元素建模代码

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Over the past 30 years, the Discrete Element Method (DEM) has rapidly gained popularity as a tool for modelling the behaviour of granular assemblies and is being used extensively in both scientific and industrial applications. However, it is far from clear from reviewing the literature whether the large number of DEM codes have been verified and checked against fundamental benchmark problems. DEM simulates the dynamics of each particle in an assembly by calculating the acceleration resulting from all the contact forces and body forces. It is clearly necessary that such a model be validated or verified by comparing with experimental results, analytical solutions or other numerical results (e.g. Finite Element Analysis (FEA) results) at particle impact level. There appears to be no standard benchmark tests against which DEM codes can be verified. It is thus essential and useful to establish a set of standard benchmark tests to confirm that these DEM codes are modelling the particle dynamics as intended. This paper proposes a set of benchmark tests to verify DEM codes at particle impact level for spherical particles. The analytical solutions derived from elasticity theory for elastic normal collision of two spheres or a sphere with a rigid plane are first reviewed. These analytical solutions apply only to the elastic regime for normal impact. Secondly, the analytical solutions of frictional oblique impact between two spheres or a sphere with a rigid plane are scrutinized and derived. These analytical solutions originate from the dynamics principles and should be satisfied for any DEM contact force model with prescribed friction and restitution coefficients. A set of eight benchmark tests are designed and performed using commercial DEM codes. Test 1 and Test 2 consider the elastic normal impact of two spheres or a sphere with a rigid plane, whereas the other tests (Test 3-Test 8) investigate the energy dissipation due to the collision. These benchmark tests also involve different types of material. The DEM results were compared with the analytical solutions, experimental or FEA results found in the literature. All benchmark tests showed good to excellent match, providing a quantitative verification for the codes used in this study. These benchmark tests not only verify DEM codes but also enhance the understanding of fundamental impact phenomena for modelling a large number of particles.
机译:在过去的30年中,离散元方法(DEM)作为一种用于对粒状装配体行为进行建模的工具,已迅速普及,并已广泛用于科学和工业应用中。但是,从文献回顾来看,是否已经对大量的DEM代码进行了验证并针对基本的基准问题进行检查还远远不够。 DEM通过计算所有接触力和体力产生的加速度来模拟装配体中每个粒子的动力学。显然有必要通过与粒子撞击水平下的实验结果,分析解决方案或其他数值结果(例如有限元分析(FEA)结果)进行比较来验证或验证这种模型。似乎没有可以验证DEM代码的标准基准测试。因此,建立一组标准基准测试以确认这些DEM代码正在按预期对粒子动力学进行建模是至关重要且有用的。本文提出了一组基准测试,以验证球形粒子在粒子撞击水平下的DEM代码。首先回顾了从弹性理论得出的两个球或一个具有刚性平面的球的弹性法向碰撞的解析解。这些分析解决方案仅适用于正常冲击的弹性状态。其次,研究并推导了两个球体或具有刚性平面的球体之间的倾斜摩擦力的解析解。这些分析解决方案源于动力学原理,对于具有规定摩擦系数和恢复系数的任何DEM接触力模型都应满足。使用商业DEM代码设计和执行了一组八个基准测试。测试1和测试2考虑了两个球或具有刚性平面的球的弹性法向冲击,而其他测试(测试3-测试8)则研究了碰撞引起的能量耗散。这些基准测试还涉及不同类型的材料。将DEM结果与文献中找到的分析解决方案,实验结果或FEA结果进行比较。所有基准测试均显示出良好的匹配,为该研究中使用的代码提供了定量验证。这些基准测试不仅验证了DEM代码,而且还增强了对建模大量粒子的基本冲击现象的理解。

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